Polyoxymethylene

Polyoxymethylene
Full structural formula of the repeating unit
Space-filling model of a polyoxymethylene chain
Names
Other names
Poly(oxymethylene) glycol; polymethylene glycol
Identifiers
ChemSpider
  • None
UNII
Properties
(CH2O)n
Molar mass Variable
Appearance White solid (undyed)
Density 1.41–1.42 g/cm3[1]
Melting point 165 °C (329 °F)[2]
Electrical resistivity 14×1015 Ω⋅cm[2]
−9.36×10−6 (SI, at 22 °C) [3]
Thermochemistry
1500 J/kg·K[2]
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
☒N verify (what is checkY☒N ?)
Keck clips made of polyoxymethylene

Polyoxymethylene (POM), also known as acetal,[4] polyacetal, and polyformaldehyde, is an engineering thermoplastic used in precision parts requiring high stiffness, low friction, and excellent dimensional stability. Short-chained POM (chain lenght between 8 and 100 repeating units) is also better known as paraformaldehyde (PFA). As with many other synthetic polymers, polyoxymethylenes are produced by different chemical firms with slightly different formulas and sold variously by such names as Delrin, Kocetal, Ultraform, Celcon, Ramtal, Duracon, Kepital, Polypenco, Tenac and Hostaform.

POM is characterized by its high strength, hardness and rigidity to −40 °C. POM is intrinsically opaque white because of its high crystalline composition but can be produced in a variety of colors.[1] POM has a density of 1.410–1.420 g/cm3.[5]

Typical applications for injection-molded POM include high-performance engineering components such as small gear wheels, eyeglass frames, ball bearings, ski bindings, fasteners, gun parts, knife handles, and lock systems. The material is widely used in the automotive and consumer electronics industry. POM's electrical resistivity is 14×1015 Ω⋅cm making it a dielectric with a 19.5MV/m breakdown voltage.[2][6]

Development

Polyoxymethylene was discovered by Hermann Staudinger, a German chemist who received the 1953 Nobel Prize in Chemistry.[7] He had studied the polymerization and structure of POM in the 1920s while researching macromolecules, which he characterized as polymers. Due to problems with thermostability, POM was not commercialized at that time.[8]

Circa 1952, research chemists at DuPont synthesized a version of POM,[9] and in 1956 the company filed for patent protection of the homopolymer,[10] forgetting to mention in the patent the term copolymer, opening thus the road to competitors. DuPont credits R. N. MacDonald as the inventor of high-molecular-weight POM.[11] Patents by MacDonald and coworkers describe the preparation of high-molecular-weight hemiacetal-terminated (~O−CH2OH) POM,[12] but these lack sufficient thermal stability to be commercially viable. The inventor of a heat-stable (and therefore useful) POM homopolymer was Stephen Dal Nogare,[13] who discovered that reacting the hemiacetal ends with acetic anhydride converts the readily depolymerizable hemiacetal into a thermally stable, melt-processable plastic.

In 1960, DuPont completed construction of a plant to produce its own version of acetal resin, named Delrin, at Parkersburg, United States.[14] Also in 1960, Celanese completed its own research. Shortly thereafter, in a limited partnership with the Frankfurt firm Hoechst AG, a factory was built in Kelsterbach, Hessen; from there, Celcon was produced starting in 1962,[15] with Hostaform joining it a year later. Both remain in production under the auspices of Celanese and are sold as parts of a product group now called 'Hostaform/Celcon POM.

Production

Different manufacturing processes are used to produce the homopolymer and copolymer versions of POM.

Homopolymer

To make polyoxymethylene homopolymer, anhydrous formaldehyde must be generated. The principal method is by reaction of the aqueous formaldehyde with an alcohol to create a hemiformal, dehydration of the hemiformal/water mixture (either by extraction or vacuum distillation) and release of the formaldehyde by heating the hemiformal. The formaldehyde is then polymerized by anionic catalysis, and the resulting polymer stabilized by reaction with acetic anhydride. Due to the manufacturing process, large-diameter cross-sections may have pronounced centerline porosity.[16] A typical example is DuPont's Delrin.

Copolymer

The polyoxymethylene copolymer replaces about 1–1.5% of the −CH2O− groups with −CH2CH2O−.[17]

To make polyoxymethylene copolymer, formaldehyde is generally converted to trioxane (specifically 1,3,5-trioxane, also known as trioxin).[18] This is done by acid catalysis (either sulfuric acid or acidic ion-exchange resins) followed by purification of the trioxane by distillation and/or extraction to remove water and other active hydrogen-containing impurities. Typical copolymers are Hostaform from Celanese and Ultraform from BASF.

The co-monomer is typically dioxolane, but ethylene oxide can also be used. Dioxolane is formed by reaction of ethylene glycol with aqueous formaldehyde over an acid catalyst. Other diols can also be used.

Trioxane and dioxolane are polymerized using an acid catalyst, often boron trifluoride etherate, BF3OEt2. The polymerization can take place in a non-polar solvent (in which case the polymer forms as a slurry) or in neat trioxane (e.g. in an extruder). After polymerization, the acidic catalyst must be deactivated and the polymer stabilized by melt or solution hydrolysis to remove unstable end groups.

Stable polymer is melt-compounded, adding thermal and oxidative stabilizers and optionally lubricants and miscellaneous fillers.

Fabrication

POM is supplied in a granulated form and can be formed into the desired shape by applying heat and pressure.[citation needed] The two most common forming methods employed are injection molding and extrusion. Rotational molding and blow molding are also possible.[citation needed]

Typical applications for injection-molded POM include high-performance engineering components (e.g. gear wheels, ski bindings, yoyos, fasteners, lock systems). The material is widely used in the automotive and consumer electronics industry. There are special grades that offer higher mechanical toughness, stiffness or low-friction/wear properties.

POM is commonly extruded as continuous lengths of round or rectangular section. These sections can be cut to length and sold as bar or sheet stock for machining.

Typical mechanical properties

POM is a hard plastic, that cannot be glued, but can be joined to POM by melting. Melted POM does not adhere to steel tools used to shape it.[19][20]

Density 1.41 kg/dm3
Melting point 165 °C
Specific thermal capacity 1500 J/kg/K
Specific thermal conductivy 0.31 to 0.37 W/m/K
Coefficient of thermal expansion 12 ppm/K

POM is a relatively strong plastic, nearly as strong as epoxy, or aluminum, but a bit more flexible:

Property value units
Tensile yield stress 62 MPa
Tensile modulus 2700 MPa
Elongation at yield 2.5 %
Tensile breaking stress 67 MPa
Elongation at break 35 %
Impact strength 80 kJ/m2

  POM is wear-resistant:

Property conditions value units
Coefficient of friction against steel 0.3 m/s, 0.49 MPa 0.31
Coefficient of friction against steel 0.3 m/s, 0.98 MPa 0.37
Specific wear against steel 0.49 MPa 0.65 mm3/N/km
Specific wear against steel 0.98 MPa 0.30 mm3/N/km
Coefficient of friction against POM 0.15 m/s, 0.06 MPa 0.37

Availability and price

POM materials can have trademarked producer-specific names, for example "Delrin".

Prices for large quantities, in october 2023, in US$/kg:[21]

  •   USA : 3.26, Europe 2.81, China 2.58, SEA 2.30, Middle East 1.68 .

Prices and availability retail / small wholesale :

  •   available in many colors, e.g. black, white, but not transparent .
  •   available as plates [22][ref], upto 3 meter by 1.25 meter, in thicknesses from 0.5mm to 130mm .
  •   available as round bars [ref], from diameter 5mm to 200mm.

Retail price november 2023 in the Netherlands : from 19 to 27 euro/dm3

Advantages and disadvantages

POM is a strong and hard plastic, about as strong as plastics can be, and therefore competes with e.g. epoxy resins and polycarbonates.

The price of POM is about the same as that of epoxy.

There are two main differences between POM and epoxy resins:

  • epoxy is a two-component resin that can be cast, and adheres to everything it touches,

while POM can be cast when melted and adheres to practically nothing.

  • epoxy is usable up to 180°C. POM can be used long-time up to 80°C, short-time up to 100°C.

Epoxy resins are often used with glass fiber reinforcement, but for POM that is not an option because it does not adhere to the glass fibres.

Epoxy resins needs time to cure, while POM has fully matured as soon as it has cooled down.

POM has very little shrinkage: from 165°C to 20°C it shrinks by just 0.17%.

Machining

When supplied as extruded bar or sheet, POM may be machined using traditional methods such as turning, milling, drilling etc. These techniques are best employed where production economics do not merit the expense of melt processing. The material is free-cutting, but does require sharp tools with a high clearance angle. The use of soluble cutting lubricant is not necessary, but is recommended.

POM sheets can be cut cleanly and accurately using an infrared laser, such as in a CO2 laser cutter.

Because the material lacks the rigidity of most metals, care should be taken to use light clamping forces and sufficient support for the work piece.

As can be the case with many polymers, machined POM can be dimensionally unstable, especially with parts that have large variations in wall thicknesses. It is recommended that such features be "designed-out" e.g. by adding fillets or strengthening ribs. Annealing of pre-machined parts before final finishing is an alternative. A rule of thumb is that in general, small components machined in POM suffer from less warping.

Bonding

POM is typically very difficult to bond, with the copolymer typically responding worse to conventional adhesives than the homopolymer.[23] Special processes and treatments have been developed to improve bonding. Typically these processes involve surface etching, flame treatment, using a specific primer/adhesive system, or mechanical abrasion.

Typical etching processes involve chromic acid at elevated temperatures. DuPont uses a patented process for treating acetal homopolymer called satinizing that creates a surface roughness sufficient for micromechanical interlocking. There are also processes involving oxygen plasma and corona discharge.[24][25] In order to get a high bond strength without specialized tools, treatments, or roughening, one can use Loctite 401 prism adhesive combined with Loctite 770 prism primer to get bond strengths of ~1700psi.[23]

Once the surface is prepared, a number of adhesives can be used for bonding. These include epoxies, polyurethanes, and cyanoacrylates. Epoxies have shown 150–1,050 psi (1,000–7,200 kPa)[23] shear strength. Cyanoacrylates are useful for bonding to metal, leather, rubber, cotton, and other plastics.

Solvent welding is typically unsuccessful on acetal polymers, due to the excellent solvent resistance of acetal.[citation needed]

Thermal welding through various methods has been used successfully on both homopolymer and copolymer.[26]

Usage

  • A fountain pen with a polyoxymethylene body and cap
    A fountain pen with a polyoxymethylene body and cap
    Mechanical gears, sliding and guiding elements, housing parts, springs, chains, screws, nuts, fan wheels, pump parts, valve bodies.
  • Electrical engineering: insulators, bobbins, connectors, parts for electronic devices such as televisions, telephones, etc.
  • Vehicle: fuel sender unit, light/control stalk/combination switch (including shifter for light, turn signal), power windows, door lock systems, articulated shells.
  • Model: model railway parts, such as trucks (bogies) and hand rails (handle bars). POM is tougher than ABS, comes in bright translucent colors, and is not paintable.
  • Hobbies: radio-controlled helicopter main gear, landing skid, yo-yos, vaping drip tips, 3D printer wheels, K'Nex,[27] ball-jointed dolls,[28] etc.
  • Medical: insulin pen, metered dose inhalers (MDI).
  • Food industry: Food and Drug Administration has approved some grades of POM for milk pumps, coffee spigots, filter housings and food conveyors.[29]
  • Furniture: hardware, locks, handles, hinges., rollers for sliding mechanisms of furnitures
  • Dunlop "Delrin 500" guitar pick
    Construction: structural glass - pod holder for point
  • Packaging: aerosol cans, vehicle tanks.
  • Pens: used as the material for pen bodies and caps
  • Sports: paintball accessories. It is often used for machined parts of paintball markers that do not require the strength of aluminium, such as handles and reciprocating bolts. POM is also used in airsoft guns to reduce piston noise.
  • Longboarding: puck material for slide gloves help the rider touch the road and lean on their hand to slow down, stop, or perform tricks.
  • Clothing: zippers.
  • Music: picks, Irish flutes, bagpipes, practice chanters, harpsichord plectra, instrument mouthpieces, tips of some drum sticks.[30][31]
  • Dining: fully automatic coffee brewers; knife handles (particularly folding knives).
  • Horology: mechanical movement parts (e.g. Lemania 5100[32]), watch bracelets (e.g. IWC Porsche Design 3701).
  • Vapor/e-cigarette accessories: material used in the manufacturing of most "Drip Tips" (Mouthpiece).
  • Tobacco products: The BIC Group uses Delrin for their lighters.[33]
  • Keyboard keycaps: Cherry uses POM for their G80 and G81 series keyboards.[34]

Degradation

Chlorine attack of acetal-resin plumbing joint

Acetal resins are sensitive to acid hydrolysis and oxidation by agents such as mineral acid and chlorine.[35] POM homopolymer is also susceptible to alkaline attack and is more susceptible to degradation in hot water. Thus low levels of chlorine in potable water supplies (1–3 ppm) can be sufficient to cause environmental stress cracking, a problem experienced in both the US and Europe in domestic and commercial water supply systems. Defective mouldings are most sensitive to cracking, but normal mouldings can succumb if the water is hot. Both POM homopolymer and copolymer are stabilized to mitigate these types of degradation.

In chemistry applications, although the polymer is often suitable for the majority of glassware work, it can succumb to catastrophic failure. An example of this would be using the polymer clips on hot areas of the glassware (such as a flask-to-column, column-to-head or head-to-condenser joint during distillation). As the polymer is sensitive to both chlorine and acid hydrolysis, it may perform very poorly when exposed to the reactive gases, particularly hydrogen chloride (HCl). Failures in this latter instance can occur with seemingly unimportant exposures from well sealed joints and do so without warning and rapidly (the component will split or fall apart). This can be a significant health hazard, as the glass may open or smash. Here, PTFE or a high-grade stainless steel may be a more appropriate choice.

In addition, POM can have undesirable characteristics when burned. The flame is not self-extinguishing, shows little to no smoke, and the blue flame can be almost invisible in ambient light. Burning also releases formaldehyde gas, which irritates nose, throat, and eye tissues.

See also

References

  1. ^ a b "Colored Delrin". Retrieved 12 March 2021.
  2. ^ a b c d "Data Sheet: POM (Delrin, Acetal)" (PDF). xometry.eu. 2021. Retrieved June 19, 2022.
  3. ^ Wapler, M. C.; Leupold, J.; Dragonu, I.; von Elverfeldt, D.; Zaitsev, M.; Wallrabe, U. (2014). "Magnetic properties of materials for MR engineering, micro-MR and beyond". JMR. 242: 233–242. arXiv:1403.4760. Bibcode:2014JMagR.242..233W. doi:10.1016/j.jmr.2014.02.005. PMID 24705364. S2CID 11545416.
  4. ^ "MatWeb:acetal".
  5. ^ "Ticona MSDS for Hostaform". Archived from the original on 2011-05-12.
  6. ^ Acetal (Polyoxymethylene)
  7. ^ "The Nobel Prize in Chemistry 1953". NobelPrize.org. Retrieved 8 March 2016.
  8. ^ Kincaid, Courtney (2018-07-06). "Acetal - Polyoxymethylene (POM) - Thermoplastic". Polymershapes. Retrieved 2024-05-13.
  9. ^ Joseph P. Kennedy; Wayne H. Watkins (31 July 2012). How to Invent and Protect Your Invention: A Guide to Patents for Scientists and Engineers. John Wiley & Sons. pp. 194–. ISBN 978-1-118-41009-7.
  10. ^ "A History of Plastics". British Plastics Federation. Retrieved 8 March 2016.
  11. ^ News & Media Relations Home - DuPont EMEA[permanent dead link]
  12. ^ US 2768994, Macdonald, Robert Neal, "Polyoxymethylenes", published 1956-10-30, assigned to E. I. Du Pont de Nemours and Co. 
  13. ^ US 2998409, Nogare, Stephen Dal & Punderson, John Oliver, "Polyoxymethylene carboxylates of improved thermal stability", published 1961-08-29, assigned to E. I. Du Pont de Nemours and Co. 
  14. ^ Paul C. Painter; Michael M. Coleman (2008). Essentials of Polymer Science and Engineering. DEStech Publications, Inc. pp. 313–. ISBN 978-1-932078-75-6.
  15. ^ Christopher C. Ibeh (25 April 2011). Thermoplastic Materials: Properties, Manufacturing Methods, and Applications. CRC Press. pp. 473–. ISBN 978-1-4200-9384-1.
  16. ^ "Acetal Products Comparison: Acetal vs. Delrin" (PDF). Lion Engineering Plastics. Retrieved 2016-10-01.
  17. ^ "How to Maximise the Property Advantages of DuPont Delrin Acetal Homopolymer over Acetal Copolymer" (PDF). DuPont. 2013. Archived from the original (PDF) on 2016-05-19. Retrieved 2016-10-01.
  18. ^ US5344911A, Yamamoto, Kaoru; Maeda, Nagayoshi & Kamiya, Makoto et al., "Process for producing polyoxymethylene copolymer having reduced amount of unstable terminal groups", issued 1994-09-06 
  19. ^ "POM standard values" (PDF). POM_standard_values.pdf. Retrieved November 3, 2023.
  20. ^ "General Properties of M90-44". DURACON® POM Grade Catalog M90-44. Retrieved November 3, 2023.
  21. ^ "Polyoxymethylene (POM) price index". BusinessAnalytIQ. Retrieved November 3, 2023.
  22. ^ "POM-C staf wit Ø 100mm". Rich Kunststoffen. Retrieved November 3, 2023.
  23. ^ a b c "Design Guide for Bonding Plastics" (PDF). Retrieved 22 February 2020.
  24. ^ BASF Ultraform product information
  25. ^ Snogren, R. C. (1974). Handbook of Surface Preparation. New York: Palmerton Publishing Co.
  26. ^ "Tamshell Engineering Corner". Retrieved 15 September 2017.
  27. ^ "Ticona Polymer and Processing Expertise Helps Rodon Deliver Successes, Including K'NEX® Toys". celanese.com. Celanese Corporation. Retrieved 19 March 2016.
  28. ^ The Smart Doll Body
  29. ^ "Acetal Plastic Sheet, Rod, Tube and Accessories". Interstate Plastics. Retrieved September 1, 2015.
  30. ^ Murphy, Joe. "The Loud Buzzer". unknown. Archived from the original on 2013-10-04. Retrieved 2012-03-17.
  31. ^ Barry, Kenneth. "Saxscape Mouthpieces".
  32. ^ "Chronography 4: Lemania 5100". 19 October 2015.
  33. ^ "BiC® Werbefeuerzeuge für Geschäftskunden". www.bic-feuerzeuge.de (in German). Retrieved 2017-08-14.
  34. ^ "ABS vs PBT vs POM Keycap Plastic". numpad. 2020-01-14. Archived from the original on 2020-07-24. Retrieved 2020-01-18.
  35. ^ https://www.industrialspec.com/images/files/acetal-pom-chemical-compatibility-chart-from-ism.pdf

Read other articles:

Eastern Samar's at-large congressional districtConstituencyfor the House of Representatives of the PhilippinesLocation of Eastern Samar within the PhilippinesProvinceEastern SamarRegionEastern VisayasPopulation477,168 (2020)[1]Electorate347,616 (2022)[2]Area4,660.47 km2 (1,799.42 sq mi)Current constituencyCreated1965RepresentativeMaria Fe R. AbundaPolitical party  PDP–LabanCongressional blocMajority Eastern Samar's at-large congressional district is the sole…

В Википедии есть статьи о других людях с такой фамилией, см. Волож. Аркадий Волож Имя при рождении Аркадий Юрьевич Волож Дата рождения 11 февраля 1964(1964-02-11)[1] (60 лет) Место рождения Гурьев, Казахская ССР, СССР Гражданство  СССР Россия Мальта[2] Израиль Род дея…

State highway in northeastern Illinois, US Illinois Route 19IL 19 highlighted in redRoute informationMaintained by IDOT and CDOTLength33.64 mi[1] (54.14 km)Existed1949[2]–presentMajor junctionsWest end IL 25 in ElginMajor intersections IL 390 Toll in Schaumburg US 12 / US 45 in Schiller Park Future I-490 in Bensenville I-294 Toll in Schiller Park I-90 / I-94 in Chicago East end US 41 in Chicago LocationCountryUnited St…

森特拉利纳Centralina市镇森特拉利纳在巴西的位置坐标:18°35′02″S 49°11′56″W / 18.5839°S 49.1989°W / -18.5839; -49.1989国家巴西州米纳斯吉拉斯州面积 • 总计321.985 平方公里(124.319 平方英里)海拔531 公尺(1,742 英尺)人口 • 總計10,219人 • 密度31.7人/平方公里(82.2人/平方英里) 森特拉利纳(葡萄牙语:Centralina)是巴西米…

Questa voce o sezione sull'argomento informatica è priva o carente di note e riferimenti bibliografici puntuali. Sebbene vi siano una bibliografia e/o dei collegamenti esterni, manca la contestualizzazione delle fonti con note a piè di pagina o altri riferimenti precisi che indichino puntualmente la provenienza delle informazioni. Puoi migliorare questa voce citando le fonti più precisamente. Segui i suggerimenti del progetto di riferimento. Sinclair ZX SpectrumcomputerTipoHome computer …

KitanahLingkunganNegara Arab SaudiProvinsiProvinsi MadinahKotaMadinahZona waktuUTC+3 (EAT) • Musim panas (DST)UTC+3 (EAT) Kitanah (Arab: كتانة) adalah sebuah lingkungan di kota suci Madinah di Provinsi Madinah, tepatnya di sebelah barat Arab Saudi.[1] Referensi ^ National Geospatial-Intelligence Agency. GeoNames database entry. (search Diarsipkan 2017-03-18 di Wayback Machine.) Accessed 12 May 2011. lbsLingkungan sekitar Masjid Nabawi, Madinah, Arab Saudi • Al…

مستيثوبورفيريو دياز (في الأعلى) · إنكا غارثيلاسو دي لا فيغامناطق الوجود المميزة الكاريبيأمريكا اللاتينيةالولايات المتحدة الكاريبيأمريكا اللاتينيةالولايات المتحدةاللغات الأغلب إسبانيةكذلك البرتغالية (كابوكلو), الفرنسية (الميتي), الإنجليزية (الولايات المتحدة الأم…

Частина серії проФілософіяLeft to right: Plato, Kant, Nietzsche, Buddha, Confucius, AverroesПлатонКантНіцшеБуддаКонфуційАверроес Філософи Епістемологи Естетики Етики Логіки Метафізики Соціально-політичні філософи Традиції Аналітична Арістотелівська Африканська Близькосхідна іранська Буддійсь…

Chinese civil rights activist and academic (born 1973) In this Chinese name, the family name is Xu. You can help expand this article with text translated from the corresponding article in Chinese. (March 2023) Click [show] for important translation instructions. Machine translation, like DeepL or Google Translate, is a useful starting point for translations, but translators must revise errors as necessary and confirm that the translation is accurate, rather than simply copy-pasting machine-…

Jats Clan) For other uses of Gondal, see Gondal (disambiguation). GondalReligions Islam, Hinduism, SikhismLanguagesPunjabiCountryPakistan, IndiaRegionPunjabEthnicityPunjabi Gondal is a historical clan and a surname of Punjabis in Pakistan, mainly present in Gujrat, Sargodha and Mandi Bahauddin districts of Punjab.[1][2][3] History In the early 18th century, Gondals resided in the tract of land between Jhelum and Chenab, roughly from present-day Shahpur to Gujrat. In his N…

This article needs additional citations for verification. Please help improve this article by adding citations to reliable sources. Unsourced material may be challenged and removed.Find sources: List of Indian dishes – news · newspapers · books · scholar · JSTOR (August 2014) (Learn how and when to remove this message) This is a dynamic list and may never be able to satisfy particular standards for completeness. You can help by adding missing items with r…

FilmAffinity (FA) Información generalDominio www.filmaffinity.comTipo Base de datos en línea para el cine y la televisiónComercial SíRegistro Opcional para participar en comentarios, calificaciones y votacionesIdiomas disponibles Español e inglésEn español SíEstado actual ActivoGestiónDesarrollador Pablo Kurt Verdú Schumann y Daniel NicolásPropietario FILMAFFINITY S.L.Lanzamiento 2002EstadísticasRanking Alexa 3869 (junio de 2021)[1]​[editar datos en Wikidata] FilmAffi…

Ethnic group of Liberia For the ethnic group native to the Congo Basin, see Kongo people. Not to be confused with Liberian Americans. This article needs additional citations for verification. Please help improve this article by adding citations to reliable sources. Unsourced material may be challenged and removed.Find sources: Americo-Liberian people – news · newspapers · books · scholar · JSTOR (July 2023) (Learn how and when to remove this message) Ethn…

American clarinet player and composer (born 1959) Ben GoldbergBackground informationBorn (1959-08-08) August 8, 1959 (age 64)Denver, Colorado, United StatesGenresJazz, free jazz, klezmerOccupation(s)Musician, composerInstrument(s)ClarinetLabelsBAG ProductionWebsitebengoldberg.netMusical artist Ben Goldberg is an American clarinet player and composer. Career In the early 1990s, Ben Goldberg performed alongside electric bassist Dan Seamans and percussionist Kenny Wollesen as the New Klezmer T…

This is a list of ministers of foreign affairs of the Republic of Cyprus since the independence in 1960: Image Minister Began Ended Spyros Kyprianou 16 August 1960 15 June 1972 Ioannis Christophides 16 June 1972 8 March 1978 Nicos A. Rolandis 3 March 1978 21 September 1983 Georgios Iacovou 22 September 1983 27 February 1993 Alekos Michaelides 28 February 1993 8 April 1997 Ioannis Kasoulidis 9 April 1997 28 February 2003 Georgios Iacovou 1 March 2003 12 June 2006 Giorgos Lillikas 13 June 2006 16 …

Software package for graph visualization GraphvizDeveloper(s)AT&T Labs Research and contributors[1]Initial releasebefore 1991; 33 years ago (1991)[2]Stable release11.0.0[3] / 28 April 2024; 48 days ago (28 April 2024) Repositorygitlab.com/graphviz/graphvizWritten inCOperating systemLinux, macOS, WindowsTypeGraph visualizationLicenseEclipse Public LicenseWebsitegraphviz.org A red–black tree plotted by Graphviz. Undirected graph showing …

British actor Allan JeayesBornAllan John Jeayes(1885-01-19)19 January 1885Barnet, Hertfordshire, EnglandDied20 September 1963(1963-09-20) (aged 78)Marylebone, London, EnglandOccupationActorYears active1918–1962 Allan John Jeayes (19 January 1885 – 20 September 1963) was an English stage and film actor. Jeayes was born in Barnet, Hertfordshire,[1] the son of Isaac Herbert Jeayes, archivist and Assistant Keeper of Manuscripts at the British Museum.[2] Jeayes was e…

العلاقات الكويتية المولدوفية الكويت مولدوفا   الكويت   مولدوفا تعديل مصدري - تعديل   العلاقات الكويتية المولدوفية هي العلاقات الثنائية التي تجمع بين الكويت ومولدوفا.[1][2][3][4][5] مقارنة بين البلدين هذه مقارنة عامة ومرجعية للدولتين: وجه المقارن…

Sri Lankan politician and 18th parliamentary Speaker (1941–2021) Hon.W. J. M. Lokubandaraවි. ජ. මු. ලොකුබණ්ඩාර வி.ஜ.மு. லொக்குபண்டார18th Speaker of the ParliamentIn office22 April 2004 – 8 April 2010PresidentChandrika KumaratungaMahinda RajapaksaPrime MinisterMahinda RajapaksaRatnasiri WickremanayakePreceded byJoseph Michael PereraSucceeded byChamal RajapaksaGovernor of Sabaragamuwa ProvinceIn office21 April 2010 …

The Adventures of Huckleberry FinnSutradaraRichard ThorpeProduserJoseph L. MankiewiczDitulis olehMark Twain (novel)Hugo ButlerWaldo Salt (dialog yang tak disebutkan)PemeranMickey RooneyWalter ConnollyWilliam FrawleyRex IngramPenata musikFranz WaxmanSinematograferJohn F. SeitzPenyuntingFrank E. HullHarold F. Kress (sup.)[1]PerusahaanproduksiMetro-Goldwyn-MayerDistributorLoew's Inc.[2]Tanggal rilis 10 Februari 1939 (1939-02-10) Durasi92 menitNegaraAmerika SerikatBahasaIn…